Kim Injune, Saunders Thomas L, Morrison Sean J
Howard Hughes Medical Institute, Life Sciences Institute, Department of Internal Medicine, University of Michigan, Ann Arbor, MI 48109-2216, USA.
Cell. 2007 Aug 10;130(3):470-83. doi: 10.1016/j.cell.2007.06.011. Epub 2007 Jul 26.
Fetal stem cells differ phenotypically and functionally from adult stem cells in diverse tissues. However, little is known about how these differences are regulated. To address this we compared the gene expression profiles of fetal versus adult hematopoietic stem cells (HSCs) and discovered that the Sox17 transcriptional regulator is specifically expressed in fetal and neonatal but not adult HSCs. Germline deletion of Sox17 led to severe fetal hematopoietic defects, including a lack of detectable definitive HSCs. Conditional deletion of Sox17 from hematopoietic cells led to the loss of fetal and neonatal but not adult HSCs. HSCs stopped expressing Sox17 approximately 4 weeks after birth. During this transition, loss of Sox17 expression correlated with slower proliferation and the acquisition of an adult phenotype by individual HSCs. Sox17 is thus required for the maintenance of fetal and neonatal HSCs and distinguishes their transcriptional regulation from adult HSCs.
胎儿干细胞在表型和功能上与不同组织中的成体干细胞存在差异。然而,对于这些差异是如何调控的,我们知之甚少。为了解决这个问题,我们比较了胎儿造血干细胞(HSCs)和成体造血干细胞的基因表达谱,发现转录调节因子Sox17在胎儿和新生儿造血干细胞中特异性表达,而在成体造血干细胞中不表达。Sox17的种系缺失导致严重的胎儿造血缺陷,包括缺乏可检测到的定型造血干细胞。从造血细胞中条件性删除Sox17导致胎儿和新生儿造血干细胞的丢失,但成体造血干细胞未受影响。造血干细胞在出生后约4周停止表达Sox17。在此转变过程中,Sox17表达的丧失与个体造血干细胞增殖减缓以及获得成体表型相关。因此,Sox17是维持胎儿和新生儿造血干细胞所必需的,并且使其转录调控区别于成体造血干细胞。